水蚤模型系统中的母系效应:生态学的过去与表观遗传的未来相遇。

IF 3.1 2区 生物学 Q2 ECOLOGY
Trenton C Agrelius, Jeffry L Dudycha
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引用次数: 0

摘要

母体效应已被证明在许多进化和生态过程中发挥着重要作用。然而,了解环境刺激如何诱导跨代的代内反应仍然是难以捉摸的,特别是当试图从后代基因型中分离混杂效应时。本文综合了水蚤模型系统中资源和捕食驱动的母体效应的相关文献,详细介绍了母体如何对环境刺激做出反应,以及在后代中看到的母体效应。我们的目标是通过展示母体效应的一般原理如何从该系统的研究中出现,来证明水蚤作为一个模型系统的价值。通过整合不同类型的母体效应生物驱动因素的结果,我们确定了广泛适用的共同特征:1。许多(但不是全部)母性效应涉及后代的大小,影响对饥饿、感染、捕食和毒素的抵抗力。2. 当后代所处的环境较差时,母体的影响表现得更为强烈。3. 强烈的代内反应通常与强烈的跨代反应相关联。4. 母亲压力的时机很重要,可以提高或降低对后代表型的影响程度。5. 胚胎暴露效应可能被误认为是母体效应。我们概述了未来研究中需要优先考虑的问题,并讨论了将自然种群中母体效应的生态学相关研究与使其成为可能的分子机制相结合的可能性,特别是通过解决遗传变异和结合表观遗传学信息。这些小甲壳类动物可以揭示非遗传信息是如何以及为什么传递给后代的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maternal effects in the model system Daphnia: the ecological past meets the epigenetic future.

Maternal effects have been shown to play influential roles in many evolutionary and ecological processes. However, understanding how environmental stimuli induce within-generation responses that transverse across generations remains elusive, particularly when attempting to segregate confounding effects from offspring genotypes. This review synthesizes literature regarding resource- and predation-driven maternal effects in the model system Daphnia, detailing how the maternal generation responds to the environmental stimuli and the maternal effects seen in the offspring generation(s). Our goal is to demonstrate the value of Daphnia as a model system by showing how general principles of maternal effects emerge from studies on this system. By integrating the results across different types of biotic drivers of maternal effects, we identified broadly applicable shared characteristics: 1. Many, but not all, maternal effects involve offspring size, influencing resistance to starvation, infection, predation, and toxins. 2. Maternal effects manifest more strongly when the offspring's environment is poor. 3. Strong within-generation responses are typically associated with strong across-generation responses. 4. The timing of the maternal stress matters and can raise or lower the magnitude of the effect on the offspring's phenotype. 5. Embryonic exposure effects could be mistaken for maternal effects. We outline questions to prioritize for future research and discuss the possibilities for integration of ecologically relevant studies of maternal effects in natural populations with the molecular mechanisms that make them possible, specifically by addressing genetic variation and incorporating information on epigenetics. These small crustaceans can unravel how and why non-genetic information gets passed to future generations.

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来源期刊
Heredity
Heredity 生物-进化生物学
CiteScore
7.50
自引率
2.60%
发文量
84
审稿时长
4-8 weeks
期刊介绍: Heredity is the official journal of the Genetics Society. It covers a broad range of topics within the field of genetics and therefore papers must address conceptual or applied issues of interest to the journal''s wide readership
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